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土壤中氨氧化细菌群落的生物地理学

The biogeography of ammonia-oxidizing bacterial communities in soil.

作者信息

Fierer Noah, Carney Karen M, Horner-Devine M Claire, Megonigal J Patrick

机构信息

Department of Ecology and Evolutionary Biology, University of Colorado, Boulder, CO 80309, USA.

出版信息

Microb Ecol. 2009 Aug;58(2):435-45. doi: 10.1007/s00248-009-9517-9. Epub 2009 Apr 8.

Abstract

Although ammonia-oxidizing bacteria (AOB) are likely to play a key role in the soil nitrogen cycle, we have only a limited understanding of how the diversity and composition of soil AOB communities change across ecosystem types. We examined 23 soils collected from across North America and used sequence-based analyses to compare the AOB communities in each of the distinct soils. Using 97% 16S rRNA sequence similarity groups, we identified only 24 unique AOB phylotypes across all of the soils sampled. The majority of the sequences collected were in the Nitrosospira lineages (representing 80% of all the sequences collected), and AOB belonging to Nitrosospira cluster 3 were particularly common in our clone libraries and ubiquitous across the soil types. Community composition was highly variable across the collected soils, and similar ecosystem types did not always harbor similar AOB communities. We did not find any significant correlations between AOB community composition and measures of N availability. From the suite of environmental variables measured, we found the strongest correlation between temperature and AOB community composition; soils exposed to similar mean annual temperatures tended to have similar AOB communities. This finding is consistent with previous studies and suggests that temperature selects for specific AOB lineages. Given that distinct AOB taxa are likely to have unique functional attributes, the biogeographical patterns exhibited by soil AOB may be directly relevant to understanding soil nitrogen dynamics under changing environmental conditions.

摘要

尽管氨氧化细菌(AOB)可能在土壤氮循环中发挥关键作用,但我们对土壤AOB群落的多样性和组成如何随生态系统类型而变化的了解有限。我们研究了从北美各地采集的23种土壤,并使用基于序列的分析方法比较了每种不同土壤中的AOB群落。利用97%的16S rRNA序列相似性分组,我们在所有采样土壤中仅鉴定出24种独特的AOB系统型。所收集的序列大多属于亚硝化螺菌属谱系(占所有收集序列的80%),并且属于亚硝化螺菌属簇3的AOB在我们的克隆文库中特别常见,且在所有土壤类型中都普遍存在。在所收集的土壤中,群落组成变化很大,相似的生态系统类型并不总是拥有相似的AOB群落。我们没有发现AOB群落组成与氮有效性指标之间存在任何显著相关性。从所测量的一系列环境变量中,我们发现温度与AOB群落组成之间的相关性最强;暴露于相似年均温度的土壤往往具有相似的AOB群落。这一发现与先前的研究一致,并表明温度选择特定的AOB谱系。鉴于不同的AOB分类群可能具有独特的功能属性,土壤AOB所呈现的生物地理模式可能与理解变化环境条件下的土壤氮动态直接相关。

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